JEE Main MCQ & Objective Questions

The JEE Main exam is a crucial step for students aspiring to enter prestigious engineering colleges in India. It tests not only knowledge but also the ability to apply concepts effectively. Practicing MCQs and objective questions is essential for scoring better, as it helps in familiarizing students with the exam pattern and enhances their problem-solving skills. Engaging with practice questions allows students to identify important questions and strengthen their exam preparation.

What You Will Practise Here

  • Fundamental concepts of Physics, Chemistry, and Mathematics
  • Key formulas and their applications in problem-solving
  • Important definitions and theories relevant to JEE Main
  • Diagrams and graphical representations for better understanding
  • Numerical problems and their step-by-step solutions
  • Previous years' JEE Main questions for real exam experience
  • Time management strategies while solving MCQs

Exam Relevance

The topics covered in JEE Main are not only significant for the JEE exam but also appear in various CBSE and State Board examinations. Many concepts are shared with the NEET syllabus, making them relevant across multiple competitive exams. Common question patterns include conceptual applications, numerical problems, and theoretical questions that assess a student's understanding of core subjects.

Common Mistakes Students Make

  • Misinterpreting the question stem, leading to incorrect answers
  • Neglecting units in numerical problems, which can change the outcome
  • Overlooking negative marking and not managing time effectively
  • Relying too heavily on rote memorization instead of understanding concepts
  • Failing to review and analyze mistakes from practice tests

FAQs

Question: How can I improve my speed in solving JEE Main MCQ questions?
Answer: Regular practice with timed quizzes and focusing on shortcuts can significantly enhance your speed.

Question: Are the JEE Main objective questions similar to previous years' papers?
Answer: Yes, many questions are based on previous years' patterns, so practicing them can be beneficial.

Question: What is the best way to approach JEE Main practice questions?
Answer: Start with understanding the concepts, then attempt practice questions, and finally review your answers to learn from mistakes.

Now is the time to take charge of your preparation! Dive into solving JEE Main MCQs and practice questions to test your understanding and boost your confidence for the exam.

Q. A circular loop of radius R carries a current I. What is the magnetic field at the center of the loop according to the Biot-Savart Law?
  • A. B = (μ₀I)/(2R)
  • B. B = (μ₀I)/(4R)
  • C. B = (μ₀I)/(R)
  • D. B = (μ₀I)/(πR)
Q. A circular loop of radius R carries a current I. What is the magnetic field at the center of the loop?
  • A. μ₀I/(2R)
  • B. μ₀I/R
  • C. μ₀I/(4R)
  • D. μ₀I/(8R)
Q. A circular loop of radius r is placed in a uniform magnetic field B. If the magnetic field is perpendicular to the plane of the loop, what is the magnetic flux through the loop?
  • A. 0
  • B. πr²B
  • C. 2πrB
  • D. B/r
Q. A circular loop of wire carries a current. What is the direction of the magnetic field at the center of the loop?
  • A. Out of the plane
  • B. Into the plane
  • C. Clockwise
  • D. Counterclockwise
Q. A circular loop of wire carries a current. What is the shape of the magnetic field lines inside the loop?
  • A. Straight lines
  • B. Concentric circles
  • C. Uniform field
  • D. Radial lines
Q. A circular loop of wire is placed in a uniform magnetic field. If the magnetic field is increased, what happens to the induced EMF in the loop?
  • A. Increases
  • B. Decreases
  • C. Remains constant
  • D. Becomes zero
Q. A circular loop of wire is placed in a uniform magnetic field. What happens to the induced EMF if the area of the loop is increased?
  • A. Increases
  • B. Decreases
  • C. Remains the same
  • D. Depends on the magnetic field strength
Q. A circular loop of wire is placed in a uniform magnetic field. What happens to the induced EMF if the magnetic field strength is doubled?
  • A. Induced EMF is halved
  • B. Induced EMF remains the same
  • C. Induced EMF is doubled
  • D. Induced EMF is quadrupled
Q. A coil of wire is placed in a changing magnetic field. What happens to the induced current if the resistance of the coil is increased?
  • A. Induced current increases
  • B. Induced current decreases
  • C. Induced current remains the same
  • D. Induced current becomes zero
Q. A coil of wire is placed in a changing magnetic field. What phenomenon is observed?
  • A. Electromagnetic induction
  • B. Magnetic resonance
  • C. Electrolysis
  • D. Thermal conduction
Q. A coil of wire is placed in a magnetic field. If the magnetic field strength is increased, what happens to the induced EMF?
  • A. Increases
  • B. Decreases
  • C. Remains constant
  • D. Becomes zero
Q. A coil of wire is placed in a magnetic field. If the magnetic field strength is increased, what happens to the induced EMF in the coil?
  • A. It increases
  • B. It decreases
  • C. It remains the same
  • D. It becomes zero
Q. A coil of wire is placed in a magnetic field. If the magnetic field strength is doubled, what happens to the induced EMF?
  • A. It doubles
  • B. It remains the same
  • C. It halves
  • D. It quadruples
Q. A coil with 100 turns and an area of 0.01 m² is placed in a magnetic field of 0.5 T. What is the magnetic flux through the coil?
  • A. 0.5 Wb
  • B. 0.1 Wb
  • C. 0.05 Wb
  • D. 0.01 Wb
Q. A coil with 100 turns is placed in a magnetic field that changes at a rate of 0.5 T/s. What is the induced EMF in the coil?
  • A. 50 V
  • B. 100 V
  • C. 200 V
  • D. 25 V
Q. A coil with 100 turns is placed in a magnetic field that changes from 0.2 T to 0.5 T in 2 seconds. What is the induced EMF?
  • A. 15 V
  • B. 30 V
  • C. 5 V
  • D. 10 V
Q. A coil with 100 turns is placed in a magnetic field that changes from 0.5 T to 1.5 T in 2 seconds. What is the induced EMF?
  • A. 50 V
  • B. 100 V
  • C. 200 V
  • D. 400 V
Q. A composite body consists of a solid cylinder and a solid sphere, both of mass M and radius R. What is the total moment of inertia about the same axis?
  • A. (7/10) MR^2
  • B. (9/10) MR^2
  • C. (11/10) MR^2
  • D. (13/10) MR^2
Q. A concave lens has a focal length of -10 cm. What is the nature of the image formed when an object is placed at 15 cm from the lens?
  • A. Real and inverted
  • B. Virtual and upright
  • C. Real and upright
  • D. Virtual and inverted
Q. A concave lens has a focal length of -12 cm. What is the image distance when the object is placed at 24 cm?
  • A. 8 cm
  • B. 12 cm
  • C. 16 cm
  • D. 20 cm
Q. A concave lens has a focal length of -15 cm. What is the nature of the image formed by the lens when an object is placed at 30 cm from the lens?
  • A. Real and inverted
  • B. Virtual and erect
  • C. Real and erect
  • D. Virtual and inverted
Q. A concave lens has a focal length of -20 cm. What is the nature of the image formed when an object is placed at 30 cm from the lens?
  • A. Real and inverted
  • B. Virtual and erect
  • C. Real and erect
  • D. Virtual and inverted
Q. A concave lens has a focal length of 25 cm. What is the image distance when the object is placed at 50 cm?
  • A. -16.67 cm
  • B. -25 cm
  • C. -50 cm
  • D. -75 cm
Q. A concave mirror has a focal length of 10 cm. An object is placed 30 cm in front of the mirror. Where will the image be formed?
  • A. 10 cm
  • B. 15 cm
  • C. 20 cm
  • D. 30 cm
Q. A concave mirror produces a virtual image of an object placed 10 cm in front of it. If the focal length of the mirror is 5 cm, what is the distance of the image from the mirror?
  • A. 5 cm
  • B. 10 cm
  • C. 15 cm
  • D. 20 cm
Q. A conical pendulum consists of a mass attached to a string that swings in a horizontal circle. If the angle of the string with the vertical is θ, what is the expression for the tension in the string?
  • A. mg/cos(θ)
  • B. mg/sin(θ)
  • C. mg/tan(θ)
  • D. mg
Q. A conical pendulum consists of a mass m attached to a string of length L, swinging in a horizontal circle. What is the expression for the tension in the string?
  • A. T = mg
  • B. T = mg/cos(θ)
  • C. T = mg/sin(θ)
  • D. T = m(v²/r)
Q. A conical pendulum swings in a horizontal circle. If the angle of the string with the vertical is θ, what is the relationship between the tension and the gravitational force acting on the pendulum bob?
  • A. T = mg
  • B. T = mg cos(θ)
  • C. T = mg sin(θ)
  • D. T = mg tan(θ)
Q. A conical pendulum swings in a horizontal circle. If the angle of the string with the vertical increases, what happens to the tension in the string?
  • A. Increases
  • B. Decreases
  • C. Remains the same
  • D. Becomes zero
Q. A conical pendulum swings in a horizontal circle. If the angle of the string with the vertical is θ, what is the relationship between the tension in the string and the gravitational force?
  • A. T = mg
  • B. T = mg/cos(θ)
  • C. T = mg/sin(θ)
  • D. T = mg/tan(θ)
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